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盐度对赤潮异弯藻细胞通透性和细胞毒性的影响。

The effects of salinity on the cellular permeability and cytotoxicity of Heterosigma akashiwo.

作者信息

Ikeda Christopher E, Cochlan William P, Bronicheski Cayla M, Trainer Vera L, Trick Charles G

机构信息

Romberg Tiburon Center for Environmental Studies, San Francisco State University, 3150 Paradise Drive, Tiburon, California, 94920, USA.

Department of Biology, Western University, London, Ontario, Canada, N6A 5B7.

出版信息

J Phycol. 2016 Oct;52(5):745-760. doi: 10.1111/jpy.12433. Epub 2016 Aug 12.

Abstract

A laboratory study using the fish-killing raphidophyte Heterosigma akashiwo was conducted to examine its capability to grow at salinities below oceanic, and to test the perceived relationship between reduced salinities and increased cytotoxicity. A nonaxenic strain of H. akashiwo isolated from the U.S. Pacific Northwest was exposed to a combination of three salinity (32, 20, and 10) and five temperature (14.7°C, 18.4°C, 21.4°C, 24.4°C and 27.8°C) conditions. Our results demonstrate that cell permeability and cytotoxicity are strongly correlated in unialgal cultures of H. akashiwo, which both increased as salinity decreased from 32 to 10. Furthermore, over a broad median range of salinities (10 and 20), neither temperature nor specific growth rate was correlated with cytotoxicity. However, in cultures grown at the salinity of 32, both temperature and specific growth rate were inversely proportional to toxicity; this relationship was likely due to the effect of contamination by an unidentified species of Skeletonema in those cultures. The presence of Skeletonema sp. resulted in a cytotoxic response from H. akashiwo that was greater than the response caused by salinity alone. These laboratory results reveal the capability of H. akashiwo to become more toxic not only at reduced salinities but also in competition with another algal species. Changes in cell permeability in response to salinity may be an acclimation mechanism by which H. akashiwo is able to respond rapidly to different salinities. Furthermore, due to its strong positive correlation with cytotoxicity, cellular permeability is potentially associated with the ichthyotoxic pathway of this raphytophyte.

摘要

利用能杀死鱼类的针胞藻赤潮异弯藻开展了一项实验室研究,以检验其在低于海洋盐度条件下的生长能力,并验证盐度降低与细胞毒性增加之间的假定关系。将从美国太平洋西北部分离出的非无菌赤潮异弯藻菌株暴露于三种盐度(32、20和10)与五种温度(14.7℃、18.4℃、21.4℃、24.4℃和27.8℃)条件的组合中。我们的结果表明,在赤潮异弯藻的单种培养物中,细胞通透性与细胞毒性密切相关,二者均随着盐度从32降至10而增加。此外,在较宽的中等盐度范围(10和20)内,温度和比生长速率均与细胞毒性无关。然而,在盐度为32的培养物中,温度和比生长速率均与毒性成反比;这种关系可能是由于这些培养物中受到一种未鉴定的骨条藻属物种污染的影响。骨条藻属的存在导致赤潮异弯藻产生的细胞毒性反应大于仅由盐度引起的反应。这些实验室结果揭示了赤潮异弯藻不仅在盐度降低时,而且在与另一种藻类竞争时变得更具毒性的能力。响应盐度的细胞通透性变化可能是赤潮异弯藻能够快速响应不同盐度的一种适应机制。此外,由于其与细胞毒性的强正相关,细胞通透性可能与这种针胞藻的鱼毒性途径有关。

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